DocumentCode :
1574476
Title :
Fault-tolerant decentralized PCT estimators applied to non-linear electrical power system state estimation
Author :
Li, H. ; Monti, A. ; Ponci, F. ; Antona, G.D.
Author_Institution :
EE Dept., Univ. of South Carolina, Columbia, SC, USA
fYear :
2009
Firstpage :
1
Lastpage :
5
Abstract :
The reliability of the power system state estimation depends on the availability of the measurements, which may be affected by hardware faults, especially sensor failures. In this work the authors present a novel fault-tolerant decentralized state estimator based on the polynomial chaos theory (PCT). This estimator has been developed to detect, diagnose, and isolate failed sensors. The sensor measurements are first diagnosed by the decentralized PCT sensor measurement estimators (DPCTSME), then are used to estimate the states of the non-linear electrical power system by means of a Decentralized PCT State Estimator. The use of PCT-based approach has been shown to be an effective tool for incorporating uncertainty in the estimation process. Numerical results of the application of this approach to an electric power test system are presented and commented.
Keywords :
fault tolerance; power system measurement; power system state estimation; fault tolerant decentralized PCT estimators; nonlinear electrical power system state estimation; polynomial chaos theory; sensor measurement estimators; Availability; Electric variables measurement; Fault tolerant systems; Hardware; Power measurement; Power system faults; Power system measurements; Power system reliability; Sensor systems; State estimation; Decentralized State Estimator; Information Rebuilding; PCT; Sensor Failure Detect and Information Rebuilding (SFDR);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power & Energy Society General Meeting, 2009. PES '09. IEEE
Conference_Location :
Calgary, AB
ISSN :
1944-9925
Print_ISBN :
978-1-4244-4241-6
Type :
conf
DOI :
10.1109/PES.2009.5275182
Filename :
5275182
Link To Document :
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